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Title of Article Ni2+-doped CaCu3Ti4O12/TiO2 nanocomposite ceramics with high temperature stability dielectric and nonlinear electrical properties for X9R capacitors 
Date of Acceptance 11 April 2019 
Journal
     Title of Journal Applied Surface Science 
     Standard SCOPUS 
     Institute of Journal Elsevier 
     ISBN/ISSN  
     Volume 484 
     Issue  
     Month August
     Year of Publication 2019 
     Page 925-932 
     Abstract The temperature stability of the dielectric constant and nonlinear electrical properties of CaCu3Ti4O12 ceramics were improved by fabricating Ni2+-doped CaCu3Ti4O12/TiO2 nanocomposite ceramics. Interestingly, a large reduction of the dielectric loss to 0.009 with high ε′ of 6314 and good temperature stability of the dielectric constant (Δε′) of less than ±15% variation over the temperature from −60 to 210 °C was obtained in a CaCu2.95Ni0.05Ti4O12/TiO2 ceramic sintered at 1060 °C for 8 h. With these excellent properties, this ceramic is proposed for applications in high temperature X8R and X9R capacitors. Nonlinear behavior of J–E curves was observed in all CaCu3−xNixTi4O12/TiO2 ceramics that could be significantly enhanced by Ni2+ doping. Very large α (~53) and Eb (~15,727 V·cm−1) values were obtained in a CaCu2.95Ni0.05Ti4O12/TiO2 ceramic sintered at 1060 °C for 8 h. X-ray absorption near edge spectroscopy (XANES) was performed for verification of the Ti oxidation state of all ceramics. Microstructural and phase composition were studied using field emission scanning electron microscopy (FESEM) and X-ray diffraction (XRD). 
     Keyword CaCu3−xNixTi4O12/TiO2 Dielectric temperature coefficients Nonlinear behavior of J–E Polymer pyrolysis route Very low loss tangent 
Author
587020070-5 Mr. KRISSANA PROMPA
Science Doctoral Degree

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